4.4 Article

An Harmonic Mode-Locked Er-Doped Fiber Laser by the Evanescent Field-Based MXene Ti3C2Tx (T = F, O, or OH) Saturable Absorber

期刊

ANNALEN DER PHYSIK
卷 532, 期 1, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/andp.201900437

关键词

harmonic mode-locking; MXene Ti3C2Tx; nonlinear optical properties

资金

  1. National Natural Science Foundation of China [61605106]
  2. projects for the Academic Leader and Academic Backbones, Shaanxi Normal University [18QNGG006]
  3. Shaanxi Normal University [1112010209, 1110010717]
  4. Fundamental Research Funds for the Central Universities [GK201802006, 2018CSLY005]
  5. Open Research Fund of State Key Laboratory of Pulsed Power Laser Technology, Electronic Engineering Institute [SKL2017KF02]
  6. Open Fund of State Key Laboratory of Information Photonics and Optical Communications (Beijing University of Posts and Telecommunications), P. R. China [IPOC2017B012]
  7. Open Research Fund of State Key Laboratory of Transient Optics and Photonics, Chinese Academy of Sciences [SKLST201401, SKLST201809]

向作者/读者索取更多资源

MXenes, as a legendary family of 2D van der Waals nanosheets materials, are extensively studied due to their unique characteristics of broadband nonlinear optical response. In particular, MXenes have excellent nonlinear optical properties of very large nonlinear absorption coefficients and very large nonlinear refractive indexes, which have attracted people's great attentions to study the application of MXenes in photonics, electronics, and optoelectronics in recent years. However, the high-repetition-rate (HRR) ultrafast pulses are not explored based on these kinds of materials. MXene Ti3C2Tx saturable absorber (SA) based on micro-fiber is fabricated by optical deposition method. Here, MXene Ti3C2Tx SA is used to achieve 36th harmonic mode-locking with a repetition rate of 218.4 MHz, a central wavelength of 1566.9 nm, the pulse width of 850 fs, and the spectral width of 3.51 nm. The maximum average output power and pulse energy are 6.95 mW and 0.032 nJ, respectively. This research based on MXene Ti3C2Tx light modulator opens a bright avenue for advanced nonlinear photonics.

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